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March 1, 1992AJP Cell Physiology237 citations

Factors affecting movement of F-actin filaments propelled by skeletal muscle heavy meromyosin

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EHEarl HomsherFWFei WangJSJames R. Sellers

Key Result

Fluorescent-labeled actin filament velocity (Vf) is a good analogue for unloaded shortening velocity (Vu) at elevated ionic strength and temperatures >20°C, but differs under other conditions.

Key Points

  • This research examines the factors influencing the movement of F-actin filaments propelled by skeletal muscle myosin.
  • Measured fluorescent-labeled actin filament velocity under various conditions including ATP concentration, pH, ionic strength, and temperature.
  • Utilized techniques to select uniformly moving filaments for accurate quantification of their velocity (Vf).
  • Compared Vf to unloaded shortening velocity (Vu) reported in literature.
  • Vf shows similarity to Vu at temperatures above 20 degrees C and higher ionic strengths, with Vf more sensitive to lower pH and temperatures below 20 degrees C.
  • At ionic strengths below 50 mM, Vf is significantly reduced, indicating sensitivity to ionic conditions.
  • Increasing weakly bound cross bridges does not significantly affect Vf, highlighting certain robustness of filament movement.

Structured PICO

P
Population
Fluorescent-labeled actin filaments propelled by skeletal muscle heavy meromyosin
I
Intervention
Variations in [ATP], [ADP], [Pi], pH, ionic strength (10-150 mM), and temperature (15-30 degrees C)
C
Comparator
Literature values for unloaded shortening velocity (Vu) in muscle fibers
O
Outcome
Filament velocity (Vf) compared to unloaded shortening velocity (Vu)

Filament velocity in motility assays is a good analogue for unloaded shortening velocity only under certain conditions (elevated ionic strength and temperatures >20°C), requiring cautious interpretation of motility assays.

Limitations

  • The results of motility assays must be cautiously interpreted.

Abstract

The measurement of fluorescent-labeled actin filament movement driven by mechanoenzymes (e.g., myosin) is an important methodology for the study of molecular motors. It is assumed that the filament velocity (Vf) is analogous to the unloaded shortening velocity (Vu) seen in muscle fibers. Methods are described to reproducibly quantitate the movement of these filaments and to select uniformly moving filaments and specify their Vf. Use of these techniques allowed comparison of Vf to literature values for Vu with regard to ATP, ADP, Pi, pH, ionic strength (10-150 mM), and temperature (15-30 degrees C). Vf and Vu are quantitatively similar with respect to the effects of substrate and product concentrations and temperatures greater than 20 degrees C. However, Vf is more sensitive to decreases in pH and temperatures less than 20 degrees C than Vu. At ionic strengths of 50-150 mM, Vf and Vu exhibit similar ionic strength dependencies (decreasing with ionic strength). At ionic strengths less than 50 mM, Vf is markedly reduced. Results of experiments using adenosine 5'-O-(3-thiotriphosphate) suggest that increasing the number of weakly bound cross bridges does not seriously affect Vf. Thus, although Vf is a good analogue for Vu under certain conditions (elevated ionic strength and temperatures greater than 20 degrees C), under others it is not. The results of motility assays must be cautiously interpreted.

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Cite This Study

Homsher et al. (1992) studied this question. Fluorescent-labeled actin filament velocity (Vf) is a good analogue for unloaded shortening velocity (Vu) at elevated ionic strength and temperatures >20°C, but differs under other conditions.

synapsesocial.com/papers/6a0ccfc3c6fb28010734c92dhttps://doi.org/10.1152/ajpcell.1992.262.3.c714
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The dependence of force and shortening velocity on substrate concentration in skinned muscle fibres from Rana temporaria.1984 · 143 citations
  2. 2Isotonic contraction of skinned muscle fibers on a slow time base: effects of ionic strength and calcium.1981 · 52 citations
  3. 3Troponin-Tropomyosin Complex1974 · 485 citations
  4. 4Smooth muscle myosin cross-bridge interactions modulate actin filament sliding velocity in vitro.1990 · 268 citations
  5. 5Mechanism of the phosphorylation-dependent regulation of smooth muscle heavy meromyosin.1985 · 146 citations